EP3194323B1 - Injector head tilt mechanism - Google Patents
Injector head tilt mechanism Download PDFInfo
- Publication number
- EP3194323B1 EP3194323B1 EP15829694.7A EP15829694A EP3194323B1 EP 3194323 B1 EP3194323 B1 EP 3194323B1 EP 15829694 A EP15829694 A EP 15829694A EP 3194323 B1 EP3194323 B1 EP 3194323B1
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- EP
- European Patent Office
- Prior art keywords
- arm
- articulated member
- base structure
- joint
- injector head
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
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- 238000000034 method Methods 0.000 claims description 8
- 230000008878 coupling Effects 0.000 claims description 6
- 238000010168 coupling process Methods 0.000 claims description 6
- 238000005859 coupling reaction Methods 0.000 claims description 6
- 239000012530 fluid Substances 0.000 description 4
- 238000004891 communication Methods 0.000 description 2
- 238000012986 modification Methods 0.000 description 2
- 230000004048 modification Effects 0.000 description 2
- 230000001154 acute effect Effects 0.000 description 1
- 230000002411 adverse Effects 0.000 description 1
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Classifications
-
- E—FIXED CONSTRUCTIONS
- E21—EARTH OR ROCK DRILLING; MINING
- E21B—EARTH OR ROCK DRILLING; OBTAINING OIL, GAS, WATER, SOLUBLE OR MELTABLE MATERIALS OR A SLURRY OF MINERALS FROM WELLS
- E21B19/00—Handling rods, casings, tubes or the like outside the borehole, e.g. in the derrick; Apparatus for feeding the rods or cables
- E21B19/22—Handling reeled pipe or rod units, e.g. flexible drilling pipes
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16M—FRAMES, CASINGS OR BEDS OF ENGINES, MACHINES OR APPARATUS, NOT SPECIFIC TO ENGINES, MACHINES OR APPARATUS PROVIDED FOR ELSEWHERE; STANDS; SUPPORTS
- F16M11/00—Stands or trestles as supports for apparatus or articles placed thereon ; Stands for scientific apparatus such as gravitational force meters
- F16M11/20—Undercarriages with or without wheels
- F16M11/2007—Undercarriages with or without wheels comprising means allowing pivoting adjustment
- F16M11/2021—Undercarriages with or without wheels comprising means allowing pivoting adjustment around a horizontal axis
Definitions
- Embodiments disclosed herein relate to a coiled tubing unit, more particularly, an injector head tilt mechanism.
- the main engine of a coiled tubing unit is the injector head. This component contains the mechanism to push and pull the coiled tubing in and out of the hole.
- embodiments disclosed herein relate to an injector head mounted on a tiltable platform attached at one end to a pivot mount on a base structure, and a tilt mechanism for manipulating the tiltable platform, the tilt mechanism including an articulated member attached between the tiltable platform and the base structure, the articulated member having a joint coupling a first arm and a second arm of the articulated member, and a hydraulic cylinder attached between the base structure and the articulated member, wherein the first arm is connected to a pivot point on the tiltable platform at an end opposite the joint, and the second arm is connected to a pivot point on the base structure at an end opposite the joint, wherein the hydraulic cylinder is attached at a pivot point of the base structure and a pivot point on an arm of the articulated member, wherein an arm of the cylinder is extended to push the joint of the articulated member to an over-center position where the first arm and second arm form a rigid member, thereby locking the articulated member and locking the tilt mechanism in a fully extended position where the longitudinal axis of the injector head
- embodiments disclosed herein relate to a method of manipulating a tiltable platform by use of a tilt mechanism, said tiltable platform having an injector head mounted thereon, the tiltable platform pivotally connected at one end to a base structure, the method including attaching an articulated member having a joint between the tiltable platform and the base structure, the joint coupling a first arm and a second arm of the articulated member, attaching a hydraulic cylinder between the base structure and the articulated member, connecting the first arm to a pivot point on the tiltable platform at an end opposite the joint, and connecting the second arm to a pivot point on the base structure at an end opposite the joint, attaching the hydraulic cylinder at a pivot point of the base structure and a pivot point on an arm of the articulated member, extending an arm of the cylinder, thereby pushing the joint of the articulated member to an over-center position, where the first arm and the second arm of the articulated member form a rigid member thereby locking the articulated member and locking the tilt mechanism in an extended position where the longitudinal axis
- embodiments disclosed herein relate to a coiled tubing unit including an injector head mounted on a tiltable platform attached at one end to a pivot mount on a base structure, and a tilt mechanism for manipulating the tiltable platform.
- the tilt mechanism includes an articulated member attached between the tiltable platform and the base structure, the articulated member having a joint and a cylinder attached between the base structure and the articulated member, wherein an arm of the cylinder is extended to push the joint of the articulated member to an over-center position, thereby locking the articulated member.
- the injector head tilt mechanism may be on a coiled tubing unit.
- the coiled tubing unit may include a complete set of equipment necessary to perform standard continuous-length tubing operations in the field.
- the coiled tubing unit may comprise a reel for storage and transport of coiled tubing, an injector head to provide surface drive force to run and retrieve coiled tubing, a control cabin from which an equipment operator may monitor and control the coiled tubing, and a power pack to generate hydraulic and pneumatic power required to operate the coiled tubing unit.
- the coiled tubing units may further comprise other equipment for continuous-length or coiled tubing operations in the field.
- the coiled tubing unit may comprise onshore coiled tubing units such as a truck mounted coiled tubing unit or larger trailer mounted coiled tubing units. Still further, in other embodiments the coiled tubing unit may comprise offshore coiled tubing units such as those mounted on a lift boat, barge, offshore platform or any other offshore structure.
- An injector head may be mounted on a tiltable platform above a substantially horizontal base structure.
- the base structure may be mounted on a truck or trailer.
- One end of the tiltable platform is attached to the base structure at a pivot mount, e.g., pinned or otherwise.
- the tilt mechanism disclosed herein manipulates the tiltable platform relative to the base structure to raise and lower the injector head for use or transport.
- the tilt mechanism includes an articulated member and at least one extendable cylinder. One or more cylinders extend to push a joint of the articulated member to an over-center position, thereby locking the articulated member. This allows the articulated member to substantially fully support the load without the need for hydraulic pressure in the cylinders. Thus, a loss of hydraulic power may not adversely affect the system.
- the articulated member has a joint coupling first and second arms of the member.
- the joint may include a pin inserted through holes in the arms of the articulated member, or any other type of joint.
- the first arm is connected to a pivot point (e.g., pinned or otherwise) on the tiltable platform at an end opposite the joint.
- the second arm is connected to a pivot point (e.g., pinned or otherwise) on the base structure at an end opposite the joint.
- the tilt mechanism further includes a cylinder having an extendable arm.
- the cylinder is attached between the base structure and the articulated member.
- the cylinder may be attached at a pivot point (e.g., pinned or otherwise) of the base structure and a pivot point (e.g., pinned or otherwise) on the second arm of the articulated member.
- the cylinder could be attached at a pivot point (not shown) on the first arm.
- the cylinder may be a hydraulic cylinder in fluid communication at any pressure with a hydraulic fluid source.
- the cylinder may be pneumatic or electric.
- the cylinder may be mechanical.
- the tilt mechanism may include one or more extendable cylinders and articulated members on each side of the injector head.
- FIGS 1-3 illustrate an embodiment of an injector head tilt mechanism 100.
- An injector head 50 is mounted on a tiltable platform 104 by any means.
- the tiltable platform 104 is attached at one end to a pivot point 106, e.g. pinned or otherwise.
- the pivot point 106 may be located on the distal end of a rigid structure 108 extending upward from a substantially horizontal base structure 102.
- the base structure 102 may be mounted on a truck or trailer.
- the base structure 102 may be a commonly known weldment.
- the tilt mechanism 100 includes an articulated member 110.
- the articulated member 110 has a joint 111 coupling first and second arms (110a, 110b) of the member 110.
- the joint 111 may include a pin inserted through holes in the arms of the articulated member 110, or any other type of joint.
- the first arm 110a is connected to a pivot point 112 (e.g., pinned or otherwise) on the tiltable platform 104 at an end opposite the joint 111.
- the second arm 110b is connected to a pivot point 114 (e.g., pinned or otherwise) on the base structure 102 at an end opposite the joint 111.
- the tilt mechanism 100 further includes a hydraulic cylinder 116 having an extendable arm 115.
- the hydraulic cylinder 116 is attached between the base structure 102 and the articulated member 110.
- the cylinder 116 may be attached at a pivot point 103 (e.g., pinned or otherwise) of the base structure 102 and a pivot point 117 (e.g., pinned or otherwise) on the second arm 110b of the articulated member 110.
- the cylinder 116 could be attached at a pivot point (not shown) on the first arm 110a.
- the cylinder 116 may be a hydraulic cylinder in fluid communication at any pressure with a hydraulic fluid source.
- the tilt mechanism 100 may include one or more extendable cylinders and articulated members on each side of the injector head.
- the injector tilt mount 100 is in the collapsed position (shown in Figure 1 ) where the injector head 50 is tilted at an angle, that is, a longitudinal axis of the injector head 50 is not vertical.
- the injector tilt mount 100 is in the extended position where the longitudinal axis of the injector head 50 is substantially vertical.
- Methods of using the injector tilt mount include raising the injector head from a collapsed position to an extended position for use, and then lowering the injector head from the extended position to the collapsed position for storage or transport.
- each articulated member 110 is pushed to an over-center position, that is, where the first arm 110a and second arm 110b effectively form a rigid member.
- the articulated member is locked and the injector head 50 and tiltable platform 104 do not rest on the cylinders.
- the injector head 50 and tiltable platform 104 do not rest on the hydraulic system, that is, they do not exert back pressure on the hydraulic system because the articulated member is locked.
- the cylinder arms are retracted.
- the first arm 110a and second arm 110b of the articulated member 110 are configured to be moved to an over-center position in an extended position of the tilt mechanism. Initially, in a collapsed position, the first arm 110a and second arm 110b may form an acute angle ⁇ . In an extended position, the first arm 110a and second arm 110b may form an obtuse angle ⁇ , or an angle ⁇ greater than an obtuse angle. As used herein, an "over-center" position is angle ⁇ substantially equal to or greater than 180 degrees. In certain embodiments, the first arm 110a and second arm 110b may engage each other in an extended position, thereby locking the articulated member 110.
- one or more cylinders may be attached to the tiltable platform so that the cylinders push on the tiltable platform.
- the cylinder When the cylinder is fully extended it may be mechanically locked by any means.
- other mechanical safety locks when the cylinder is fully extended other mechanical safety locks may be manually or automatically raised into position to support the tiltable platform.
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- Engineering & Computer Science (AREA)
- Mining & Mineral Resources (AREA)
- Life Sciences & Earth Sciences (AREA)
- Geology (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Fluid Mechanics (AREA)
- Environmental & Geological Engineering (AREA)
- Physics & Mathematics (AREA)
- General Life Sciences & Earth Sciences (AREA)
- Geochemistry & Mineralogy (AREA)
- Actuator (AREA)
- Manipulator (AREA)
Description
- Embodiments disclosed herein relate to a coiled tubing unit, more particularly, an injector head tilt mechanism.
- The main engine of a coiled tubing unit is the injector head. This component contains the mechanism to push and pull the coiled tubing in and out of the hole.
- US Patent Application Nos.
US 2005/247456 A1 ,US 2007/295497 A1 ,US 2007/209791 A1 ,US 2003/178200 A1 ,US 2007/131432 , andUS 2013/341001 A1 are useful for understanding the present invention. - In one aspect, embodiments disclosed herein relate to an injector head mounted on a tiltable platform attached at one end to a pivot mount on a base structure, and a tilt mechanism for manipulating the tiltable platform, the tilt mechanism including an articulated member attached between the tiltable platform and the base structure, the articulated member having a joint coupling a first arm and a second arm of the articulated member, and a hydraulic cylinder attached between the base structure and the articulated member, wherein the first arm is connected to a pivot point on the tiltable platform at an end opposite the joint, and the second arm is connected to a pivot point on the base structure at an end opposite the joint, wherein the hydraulic cylinder is attached at a pivot point of the base structure and a pivot point on an arm of the articulated member, wherein an arm of the cylinder is extended to push the joint of the articulated member to an over-center position where the first arm and second arm form a rigid member, thereby locking the articulated member and locking the tilt mechanism in a fully extended position where the longitudinal axis of the injector head is substantially vertical, wherein an angle between the first arm and the second arm is substantially equal to or greater than 180 degrees in the over-center position, and wherein there is substantially no backpressure on the hydraulic cylinder when the articulated member is locked.
- In other aspects, embodiments disclosed herein relate to a method of manipulating a tiltable platform by use of a tilt mechanism, said tiltable platform having an injector head mounted thereon, the tiltable platform pivotally connected at one end to a base structure, the method including attaching an articulated member having a joint between the tiltable platform and the base structure, the joint coupling a first arm and a second arm of the articulated member, attaching a hydraulic cylinder between the base structure and the articulated member, connecting the first arm to a pivot point on the tiltable platform at an end opposite the joint, and connecting the second arm to a pivot point on the base structure at an end opposite the joint, attaching the hydraulic cylinder at a pivot point of the base structure and a pivot point on an arm of the articulated member, extending an arm of the cylinder, thereby pushing the joint of the articulated member to an over-center position, where the first arm and the second arm of the articulated member form a rigid member thereby locking the articulated member and locking the tilt mechanism in an extended position where the longitudinal axis of the injector head is substantially vertical, creating an angle between the first arm and the second arm of the articulated member substantially equal to or greater than 180 degrees in the over-center position, and applying substantially no backpressure on the hydraulic cylinder when the articulated member is locked in the over-center position.
- In yet other aspects, embodiments disclosed herein relate to a coiled tubing unit including an injector head mounted on a tiltable platform attached at one end to a pivot mount on a base structure, and a tilt mechanism for manipulating the tiltable platform. The tilt mechanism includes an articulated member attached between the tiltable platform and the base structure, the articulated member having a joint and a cylinder attached between the base structure and the articulated member, wherein an arm of the cylinder is extended to push the joint of the articulated member to an over-center position, thereby locking the articulated member.
- The invention is illustrated in the accompanying drawings wherein,
-
Figure 1 illustrates a perspective view of an embodiment of an injector head tilt mechanism in a collapsed position; -
Figure 2 illustrates a side view of the injector head tilt mechanism ofFigure 1 ; -
Figure 3 illustrates a perspective view of an embodiment of an injector head tilt mechanism in an extended position. - An injector head tilt mechanism and method for raising an injector head is disclosed. The injector head tilt mechanism may be on a coiled tubing unit. The coiled tubing unit may include a complete set of equipment necessary to perform standard continuous-length tubing operations in the field. For example, the coiled tubing unit may comprise a reel for storage and transport of coiled tubing, an injector head to provide surface drive force to run and retrieve coiled tubing, a control cabin from which an equipment operator may monitor and control the coiled tubing, and a power pack to generate hydraulic and pneumatic power required to operate the coiled tubing unit. The coiled tubing units may further comprise other equipment for continuous-length or coiled tubing operations in the field. Moreover, in certain embodiments the coiled tubing unit may comprise onshore coiled tubing units such as a truck mounted coiled tubing unit or larger trailer mounted coiled tubing units. Still further, in other embodiments the coiled tubing unit may comprise offshore coiled tubing units such as those mounted on a lift boat, barge, offshore platform or any other offshore structure.
- An injector head may be mounted on a tiltable platform above a substantially horizontal base structure. Typically, the base structure may be mounted on a truck or trailer. One end of the tiltable platform is attached to the base structure at a pivot mount, e.g., pinned or otherwise. The tilt mechanism disclosed herein manipulates the tiltable platform relative to the base structure to raise and lower the injector head for use or transport. The tilt mechanism includes an articulated member and at least one extendable cylinder. One or more cylinders extend to push a joint of the articulated member to an over-center position, thereby locking the articulated member. This allows the articulated member to substantially fully support the load without the need for hydraulic pressure in the cylinders. Thus, a loss of hydraulic power may not adversely affect the system.
- The articulated member has a joint coupling first and second arms of the member. For example, the joint may include a pin inserted through holes in the arms of the articulated member, or any other type of joint. The first arm is connected to a pivot point (e.g., pinned or otherwise) on the tiltable platform at an end opposite the
joint. The second arm is connected to a pivot point (e.g., pinned or otherwise) on the base structure at an end opposite the joint. - The tilt mechanism further includes a cylinder having an extendable arm. The cylinder is attached between the base structure and the articulated member. For example, the cylinder may be attached at a pivot point (e.g., pinned or otherwise) of the base structure and a pivot point (e.g., pinned or otherwise) on the second arm of the articulated member. Alternatively, the cylinder could be attached at a pivot point (not shown) on the first arm. In one embodiment, the cylinder may be a hydraulic cylinder in fluid communication at any pressure with a hydraulic fluid source. In other embodiments, the cylinder may be pneumatic or electric. In yet other embodiments, the cylinder may be mechanical. The tilt mechanism may include one or more extendable cylinders and articulated members on each side of the injector head.
-
Figures 1-3 illustrate an embodiment of an injectorhead tilt mechanism 100. Aninjector head 50 is mounted on atiltable platform 104 by any means. Thetiltable platform 104 is attached at one end to apivot point 106, e.g. pinned or otherwise. Thepivot point 106 may be located on the distal end of arigid structure 108 extending upward from a substantiallyhorizontal base structure 102. Thebase structure 102 may be mounted on a truck or trailer. Thebase structure 102 may be a commonly known weldment. - The
tilt mechanism 100 includes an articulated member 110. The articulated member 110 has a joint 111 coupling first and second arms (110a, 110b) of the member 110. For example, thejoint 111 may include a pin inserted through holes in the arms of the articulated member 110, or any other type of joint. Thefirst arm 110a is connected to a pivot point 112 (e.g., pinned or otherwise) on thetiltable platform 104 at an end opposite thejoint 111. Thesecond arm 110b is connected to a pivot point 114 (e.g., pinned or otherwise) on thebase structure 102 at an end opposite thejoint 111. - The
tilt mechanism 100 further includes ahydraulic cylinder 116 having anextendable arm 115. Thehydraulic cylinder 116 is attached between thebase structure 102 and the articulated member 110. For example, thecylinder 116 may be attached at a pivot point 103 (e.g., pinned or otherwise) of thebase structure 102 and a pivot point 117 (e.g., pinned or otherwise) on thesecond arm 110b of the articulated member 110. Alternatively, thecylinder 116 could be attached at a pivot point (not shown) on thefirst arm 110a. In one embodiment, thecylinder 116 may be a hydraulic cylinder in fluid communication at any pressure with a hydraulic fluid source. Thetilt mechanism 100 may include one or more extendable cylinders and articulated members on each side of the injector head. - During transport or at other times of nonuse, the
injector tilt mount 100 is in the collapsed position (shown inFigure 1 ) where theinjector head 50 is tilted at an angle, that is, a longitudinal axis of theinjector head 50 is not vertical. During use, theinjector tilt mount 100 is in the extended position where the longitudinal axis of theinjector head 50 is substantially vertical. Methods of using the injector tilt mount include raising the injector head from a collapsed position to an extended position for use, and then lowering the injector head from the extended position to the collapsed position for storage or transport. - To raise the injector head to an extended position (shown in
Figure 3 ), thecylinders 116 are actuated to extendcylinder arms 115. Thecylinder arms 115 push each respective articulated member 110 near the joint 111 which straightens each articulated member 110 and raises an end of thetiltable platform 104, and accordingly, theinjector head 50.Joints 111 of each articulated member 110 are pushed to an over-center position, that is, where thefirst arm 110a andsecond arm 110b effectively form a rigid member. In a fully extended position, the articulated member is locked and theinjector head 50 andtiltable platform 104 do not rest on the cylinders. Theinjector head 50 andtiltable platform 104 do not rest on the hydraulic system, that is, they do not exert back pressure on the hydraulic system because the articulated member is locked. To lower the injector head, the cylinder arms are retracted. - The
first arm 110a andsecond arm 110b of the articulated member 110 are configured to be moved to an over-center position in an extended position of the tilt mechanism. Initially, in a collapsed position, thefirst arm 110a andsecond arm 110b may form an acute angle α. In an extended position, thefirst arm 110a andsecond arm 110b may form an obtuse angle α, or an angle α greater than an obtuse angle. As used herein, an "over-center" position is angle α substantially equal to or greater than 180 degrees. In certain embodiments, thefirst arm 110a andsecond arm 110b may engage each other in an extended position, thereby locking the articulated member 110. - In other embodiments, one or more cylinders may be attached to the tiltable platform so that the cylinders push on the tiltable platform. When the cylinder is fully extended it may be mechanically locked by any means. In yet other embodiments, when the cylinder is fully extended other mechanical safety locks may be manually or automatically raised into position to support the tiltable platform.
- The claimed subject matter is not to be limited in scope by the specific embodiments described herein. Indeed, various modifications of the invention in addition to those described herein will become apparent to those skilled in the art from the foregoing description. Such modifications are intended to fall within the scope of the appended claims.
Claims (6)
- An injector head (50) mounted on a tiltable platform (104) attached at one end to a pivot mount (106) on a base structure (102), and a tilt mechanism (100) for manipulating the tiltable platform (104), the tilt mechanism (100) comprising:an articulated member (110) attached between the tiltable platform (104) and the base structure (102), the articulated member (110) having a joint (111) coupling a first arm (110a) and a second arm (110b) of the articulated member (110); anda hydraulic cylinder (116) attached between the base structure (102) and the articulated member (110);wherein the first arm (110a) is connected to a pivot point (112) on the tiltable platform (104) at an end opposite the joint (111), and the second arm (110b) is connected to a pivot point (114) on the base structure (102) at an end opposite the joint (111);wherein the hydraulic cylinder (116) is attached at a pivot point (103) of the base structure (102) and a pivot point (117) on an arm (110a, 110b) of the articulated member (110);wherein an arm (115) of the hydraulic cylinder (116) is extended to push the joint (111) of the articulated member (110) to an over-center position, wherein an angle between the first arm (110a) and the second arm (110b) is substantially equal to or greater than 180 degrees in the over-center position;characterised in that when the articulated member (110) is in an over-center position, the first arm (110a) and second arm (110b) form a rigid member, thereby locking the articulated member (110) and locking the tilt mechanism (100) in a fully extended position where the longitudinal axis of the injector head (50) is substantially vertical, andwherein there is substantially no backpressure on the hydraulic cylinder (116) when the articulated member (110) is locked.
- The injector head as claimed in claim 1, wherein the hydraulic cylinder (116) is retracted to lower the injector head (50).
- A coiled tubing unit comprising an injector head (50) as claimed in claim 1 or claim 2.
- A method of manipulating a tiltable platform (104), said tiltable platform (104) having an injector head (50) mounted thereon, the tiltable platform (104) pivotally connected to a base structure (102) by a pivot mount (106) at one end, and by a tilt mechanism (100), said tilt mechanism (100) made by following the steps:attaching an articulated member (110) having a joint (111) between the tiltable platform (104) and the base structure (102), the joint (111) coupling a first arm (110a) and a second arm (110b) of the articulated member (110);attaching a hydraulic cylinder (116) between the base structure (102) and the articulated member (110);connecting the first arm (110a) to a pivot point (112) on the tiltable platform (104) at an end opposite the joint (111), and connecting the second arm (110b) to a pivot point (114) on the base structure (102) at an end opposite the joint (111);attaching the hydraulic cylinder (116) at a pivot point (103) of the base structure (102) and a pivot point (117) on an arm (110a, 110b) of the articulated member (110);the method characterised by extending an arm (115) of the hydraulic cylinder (116), thereby pushing the joint (111) of the articulated member (110) to an over-center position by creating an angle between the first arm and the second arm of the articulated member substantially equal to or greater than 180 degrees in said over-center position, wherein the first arm (110a) and the second arm (110b) of the articulated member (110) form a rigid member thereby locking the articulated member (110) and locking the tilt mechanism (100) in an extended position where the longitudinal axis of the injector head (50) is substantially vertical; andapplying substantially no backpressure on the hydraulic cylinder (116) when the articulated member (110) is locked in the over-center position.
- The method of claim 4, further comprising retracting the arm (115) of the hydraulic cylinder (116).
- The method of claim 4, further comprising raising the tiltable platform (104) from a collapsed position to the extended position for use, and then lowering the tiltable platform (104) from the extended position to the collapsed position for storage or transport.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
PL15829694T PL3194323T3 (en) | 2014-08-08 | 2015-08-06 | Injector head tilt mechanism |
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
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US14/454,948 US9587450B2 (en) | 2014-08-08 | 2014-08-08 | Injector head tilt mechanism |
PCT/US2015/044018 WO2016022806A1 (en) | 2014-08-08 | 2015-08-06 | Injector head tilt mechanism |
Publications (3)
Publication Number | Publication Date |
---|---|
EP3194323A1 EP3194323A1 (en) | 2017-07-26 |
EP3194323A4 EP3194323A4 (en) | 2018-05-30 |
EP3194323B1 true EP3194323B1 (en) | 2019-10-09 |
Family
ID=55264558
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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EP15829694.7A Active EP3194323B1 (en) | 2014-08-08 | 2015-08-06 | Injector head tilt mechanism |
Country Status (6)
Country | Link |
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US (1) | US9587450B2 (en) |
EP (1) | EP3194323B1 (en) |
CA (1) | CA2957554C (en) |
DK (1) | DK3194323T3 (en) |
PL (1) | PL3194323T3 (en) |
WO (1) | WO2016022806A1 (en) |
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- 2015-08-06 CA CA2957554A patent/CA2957554C/en active Active
- 2015-08-06 EP EP15829694.7A patent/EP3194323B1/en active Active
- 2015-08-06 DK DK15829694.7T patent/DK3194323T3/en active
- 2015-08-06 WO PCT/US2015/044018 patent/WO2016022806A1/en active Application Filing
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CN112523727A (en) * | 2020-12-22 | 2021-03-19 | 安捷华信(北京)信息科技有限公司 | Energy-efficient shale gas environment-friendly device that adopts |
Also Published As
Publication number | Publication date |
---|---|
EP3194323A4 (en) | 2018-05-30 |
PL3194323T3 (en) | 2020-06-01 |
CA2957554A1 (en) | 2016-02-11 |
CA2957554C (en) | 2021-02-02 |
WO2016022806A1 (en) | 2016-02-11 |
EP3194323A1 (en) | 2017-07-26 |
US20160040488A1 (en) | 2016-02-11 |
DK3194323T3 (en) | 2020-01-27 |
US9587450B2 (en) | 2017-03-07 |
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